1.Study on Brain Functional Network Characteristics of Parkinson’s Disease Patients Based on Beta Burst Period
Yu-Jie HAO ; Shuo YANG ; Shuo LIU ; Xu LOU ; Lei WANG
Progress in Biochemistry and Biophysics 2025;52(5):1279-1289
ObjectiveThe central symptom of Parkinson’s disease (PD) is impaired motor function. Beta-band electrical activity in the motor network of the basal ganglia is closely related to motor function. In this study, we combined scalp electroencephalography (EEG), brain functional network, and clinical scales to investigate the effects of beta burst-period neural electrical activity on brain functional network characteristics, which may serve as a reference for clinical diagnosis and treatment. MethodsThirteen PD patients were included in the PD group, and 13 healthy subjects were included in the healthy control group. Resting-state EEG data were collected from both groups, and beta burst and non-burst periods were extracted. A phase synchronization network was constructed using weighted phase lag indices, and the topological feature parameters of phase synchronization network were compared between the two groups across different periods and four frequency bands. Additionally, the correlation between changes in network characteristics and clinical symptoms was analyzed. ResultsDuring the beta burst period, the topological characteristic parameters of phase synchronization network in all four frequency bands were significantly higher in PD patients compared to healthy controls. The average clustering coefficient of the phase synchronization network in the beta band during the beta burst period was negatively correlated with UPDRS-III scores. In the low gamma band during the non-burst period, the average clustering coefficient of phase synchronization network was positively correlated with UPDRS and UPDRS-III scores, while UPDRS-III scores were positively correlated with global efficiency and average degree. ConclusionThe brain functional network features of PD patients were significantly enhanced during the beta burst period. Moreover, the beta-band brain functional network characteristics during the beta burst period were negatively correlated with clinical scale scores, whereas low gamma-band functional network features during the non-burst period were positively correlated with clinical scale scores. These findings indicate that motor function impairment in PD patients is associated with the beta burst period. This study provides valuable insights for the diagnosis of PD.
2.Expert consensus on infection prevention and control of Creutzfeldt-Jakob disease in medical institutions
Tianxiang GE ; Yangyang JIA ; Chunhui LI ; Jianrong HUANG ; Xiujuan MENG ; Xiaodong GAO ; Jingping ZHANG ; Fu QIAO ; Lijuan XIONG ; Hui LIANG ; Wei LI ; Haiyan LOU ; Wenjuan WU ; Tianxin XIANG ; Jiansen CHEN ; Biao ZHU ; Kaijin XU ; Zhihui ZHOU ; Hongliu CAI ; Meihong YU ; Yan ZHANG ; Yanwan SHANGGUAN ; Haiting FENG ; Hangping YAO ; Lei GUO ; Tieer GAN ; Weihong ZHANG ; Jimin SUN ; Ye LU ; Qun LU ; Meng CAI ; Jin SHEN ; Yunsong YU ; Anhua WU ; Liu-yi LI ; Tingting QU
Chinese Journal of Infection Control 2025;24(4):437-450
Creutzfeldt-Jakob disease(CJD)is a rapidly progressive and fatal neurodegenerative disorder caused by prions,with certain infectivity and iatrogenic transmission risks.With the rapid progress and application of new dia-gnostic biomarkers and detection methods,as well as the construction and improvement of surveillance and reporting systems,the detection of CJD in patients domestically and internationally has shown an increasing trend year by year.Due to its long incubation period and heterogeneity of early symptoms,early identification and diagnosis of the disease is difficult,increasing the risk of transmission within medical institutions.Currently,there is a lack of con-sensus on the infection prevention and control of CJD.In order to timely identify and diagnose CJD as well as effec-tively block its transmission in medical institutions,this consensus summarizes 15 clinical concerns and formulates 24 specific recommendations based on the latest domestic and international research findings and clinical evidence,as well as combines with clinical practice,aiming to standardize healthcare-associated infection prevention and control measures for CJD and reduce its transmission risk in medical institutions.
3.Expression of PTPRN in lung adenocarcinoma and its mechanism of promoting tumor metastasis
Lei WU ; Fenglin DU ; Mingna ZHAO ; Yizhe REN ; Xianzhou ZHANG ; Jiatao LOU
Journal of Shanghai Jiaotong University(Medical Science) 2025;45(7):846-857
Objective·To investigate the expression of protein tyrosine phosphatase receptor type N(PTPRN)in lung adenocarcinoma and its potential molecular mechanisms in promoting lung adenocarcinoma metastasis.Methods·A highly bone-metastatic A549-BM cell line was established through multiple rounds of intracardiac injection.RNA sequencing(RNA-seq),combined with Gene Ontology(GO)and Kyoto Encyclopedia of Genes and Genomes(KEGG)enrichment analyses,was performed to identify PTPRN as a key metastasis-related gene.Subsequently,The Cancer Genome Atlas(TCGA)database was utilized to evaluate PTPRN expression in patients with lung adenocarcinoma and its correlation with clinical prognosis.Co-expression analysis based on TCGA data was conducted to identify and analyze key genes co-expressed with PTPRN.Small interfering RNA(siRNA)targeting PTPRN(siPTPRN)was transfected into A549-BM cells,and Transwell assays were performed to assess its effects on cell migration and invasion.Western blotting was used to detect the expression of epithelial-mesenchymal transition(EMT)-related proteins and the activation of the PI3K-AKT signaling pathway.siPTPRN-transfected A549-BM cells were injected into a mouse model via intracardiac injection,and in vivo metastasis was assessed.Additionally,multiple database analyses were integrated to predict BCL6 as an upstream transcription factor of PTPRN,and siBCL6 transfection experiments were performed to validate the regulatory effect of BCL6 on PTPRN expression.Results·RNA-seq and GO/KEGG enrichment analyses demonstrated that PTPRN was significantly upregulated in highly metastatic A549-BM cells and enriched in metastasis-associated pathways,including the PI3K-AKT signaling pathway and extracellular matrix(ECM)-receptor interactions.Analysis of the TCGA database further confirmed that PTPRN was highly expressed in lung adenocarcinoma patients and significantly associated with poor prognosis.Co-expression analysis based on TCGA data,combined with GO/KEGG enrichment analyses,revealed that PTPRN-associated genes were mainly enriched in biological processes such as neural signaling,endocrine regulation,cell communication,and ECM-receptor interactions.In vitro experiments demonstrated that siPTPRN transfection significantly inhibited the migration and invasion of A549-BM cells,accompanied by downregulation of EMT-related proteins and reduced activation of the PI3K-AKT signaling pathway.In vivo experiments further showed that PTPRN knockdown markedly suppressed the metastatic potential of A549-BM cells,confirming its pro-metastatic role.Additionally,siBCL6 transfection experiments demonstrated that BCL6 knockdown upregulated PTPRN expression.Conclusion·PTPRN is highly expressed in lung adenocarcinoma tissues and promotes tumor cell migration and metastasis by enhancing EMT and activating the PI3K-AKT signaling pathway.High PTPRN expression is significantly correlated with poor prognosis in lung adenocarcinoma patients,while PTPRN enhances lung adenocarcinoma cell invasiveness and metastatic potential.BCL6 may act as an upstream transcriptional regulator of PTPRN,influencing its expression levels.
4.An upgraded nuclease prime editor platform enables high-efficiency singled or multiplexed knock-in/knockout of genes in mouse and sheep zygotes.
Weijia MAO ; Pei WANG ; Lei ZHOU ; Dongxu LI ; Xiangyang LI ; Xin LOU ; Xingxu HUANG ; Feng WANG ; Yanli ZHANG ; Jianghuai LIU ; Yongjie WAN
Protein & Cell 2025;16(8):732-738
5.Consistency of cSNP genotyping between DNA and RNA using next-generation sequencing
Danni LOU ; Yixia ZHAO ; Lei MIAO ; Jie ZHAO ; Chi ZHANG ; Kelai KANG ; Sheng HU ; Jian YE ; Le WANG
Chinese Journal of Forensic Medicine 2025;40(3):295-301,307
Objective To evaluate the consistency of DNA coding region single nucleotide polymorphism(cSNP)genotyping at the DNA and RNA levels in common body fluid samples based on the next-generation sequencing platform.Methods After extensive literature retrieval,25 cSNP loci of 8 human tissue-specific mRNAs in peripheral blood,semen and vaginal secretion were selected.Two cSNP multiplex genotyping panels based on DNA and RNA,respectively,were developed for use on the MiSeq FGx sequencing platform.45 body fluid samples(including 14 peripheral blood samples,15 semen samples and 16 vaginal secretion samples)were sequenced and analyzed.The inconsistent typing results of DNA and RNA were rechecked by Sanger sequencing.Results The results of cSNP genotyping at the DNA and RNA levels in peripheral blood were completely consistent.Among the 15 semen samples,the genotypes of rs1995640 and rs 1995641 on the TGM4 gene were inconsistent in 3 cases.Among the 16 vaginal secretion samples,there were 2 cases,1 case and 2 case with inconsistent results of rs3869098,rs10947121 and rs12110470 in MUC22 gene,respectively.Conclusion In this study,MiSeq FGx sequencing and Sanger sequencing were used to test 25 cSNP loci with body fluid tissue specificity.The same typing results at the DNA and RNA levels were observed at 20 cSNPs.Inconsistent genotypes at the DNA and RNA levels were observed at 5 cSNPs on the TGM4 and MUC22 genes.This study provides experimental methods and data for forensic cSNP studies.
6.Mechanistic study of OGT-promoted non-small cell lung cancer proliferation via the ERK signaling pathway
Xianzhou ZHANG ; Fenglin DU ; Lei WU ; Yizhe REN ; Mingna ZHAO ; Jiatao LOU
Journal of Shanghai Jiaotong University(Medical Science) 2025;45(10):1288-1297
Objective·To investigate the expression level of O-GlcNAc transferase(OGT)in non-small cell lung cancer(NSCLC)and its impact on lung cancer proliferation,as well as to explore the underlying mechanisms.Methods·The expression of OGT in NSCLC tumors and adjacent normal tissues was detected by immunohistochemistry(IHC).The dataset(GSE31210)from the GEO database was analyzed to assess the correlation between OGT expression and NSCLC patient prognosis.siRNA transfection was performed to knock down OGT expression in H460 and H1299 cells,followed by total RNA extraction and transcriptome sequencing.Pathway enrichment analysis was conducted on differentially downregulated genes in the knockdown group compared with the control group,and Western blotting was used to validate the enrichment results.The effects of OGT knockdown on cell proliferation and colony formation in H460 and H1299 cells were evaluated using the cell counting kit-8(CCK-8)assay and colony formation assay,respectively.The impact of overexpressing downstream genes was also examined.Stable OGT-knockdown cell lines were generated using shRNA and subcutaneously inoculated into nude mice to monitor tumor growth.Results·IHC revealed that OGT expression was significantly upregulated in NSCLC tumor tissues compared to adjacent normal tissues.Patients with high OGT expression exhibited shorter survival times and poorer prognoses than those with low expression.Transcriptome sequencing demonstrated that genes downregulated after OGT knockdown were primarily enriched in the mitogen-activated protein kinase(MAPK)signaling pathway.Western blotting showed that total extracellular regulated protein kinase 1/2(ERK1/2)levels remained unchanged in H460 and H1299 cells after OGT knockdown,while phosphorylated ERK1/2(p-ERK1/2)and its downstream proto-oncogene JUNB protein were markedly reduced.Suppression of OGT expression attenuated the proliferation rate and colony formation capacity of H460 and H1299 cells,whereas JUNB overexpression rescued the proliferation defects induced by OGT knockdown.Notably,H460 cells with stable OGT knockdown formed significantly smaller tumors in nude mice.Conclusion·OGT is highly expressed in NSCLC and correlates with poor prognosis.Knockdown of OGT inhibits NSCLC cell proliferation and clonogenicity in vitro,and tumor growth in vivo.Mechanistically,OGT appears to promote NSCLC progression by activating the ERK/JUNB signaling axis.
7.Mechanism of osteoarthritis treatment by exosomes.
Xiaofei WANG ; Jihang DAI ; Lei XU ; Zhimin WU ; Linbing LOU ; Cunyi XIA ; Haixiang MIAO ; Wenyong FEI ; Jingcheng WANG
Chinese Medical Journal 2025;138(3):367-369
8.Huanglian Jiedu Decoction prevents and treats acute liver injury in septic mice via AMPK/SIRT1 autophagy pathway.
Rui-Zhu ZHAO ; Xin-Yue REN ; Yu-Hang WANG ; Ding-Xing FAN ; Shi-Lei LOU ; Hui YAN ; Cong SUN
China Journal of Chinese Materia Medica 2025;50(2):507-514
This study aims to explore the mechanism of Huanglian Jiedu Decoction(HJD) in treating acute liver injury(ALI) in the mouse model of sepsis induced by lipopolysaccharide(LPS). Fifty-four male C57BL/6 mice were randomized into six groups: blank group, model group, low-, medium-, and high-dose group HJD, and dexamethasone group. The mouse model of sepsis was established by intraperitoneal injection of LPS after 7 days of gavage with HJD, and dexamethasone(0.2 mL) was injected intraperitoneally 1.5 h after modeling. The murine sepsis score(MSS) was recorded 12 h after modeling. The levels of alanine aminotransferase(ALT) and aspartate aminotransferase(AST) in the liver tissue and tumor necrosis factor-α(TNF-α) and interleukin-6(IL-6) in the serum were measured by ELISA. Hematoxylin-eosin(HE) staining was used to observe the pathological changes of the mouse liver. The content of light chain 3 of microtubule-associated protein 1(LC3) was detected by immunofluorescence, and that of sirtuin 1(SIRT1) was detected by immunohistochemistry. The mRNA levels of adenosine 5'-monophosphate-activated protein kinase(AMPK), LC3, and P62 were detected by RT-PCR. Western blot was employed to determine the protein levels of AMPK, p-AMPK, and SIRT1 in the liver tissue. The results showed that compared with model group, drug interventions decreased the MSS and liver injury indicators, lowered the levels of inflammatory cytokines, improved the liver tissue structure, upregulated the protein levels of of p-AMPK/AMPK and SIRT1 and the mRNA levels of AMPK and LC3, and downregulated the mRNA level of P62. To sum up, HJD can regulate the autophagy level and reduce inflammation to ameliorate acute liver injury in septic mice by activating the AMPK/SIRT1 autophagy pathway.
Animals
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Drugs, Chinese Herbal/administration & dosage*
;
Sirtuin 1/genetics*
;
Male
;
Mice
;
Sepsis/metabolism*
;
Mice, Inbred C57BL
;
Autophagy/drug effects*
;
AMP-Activated Protein Kinases/genetics*
;
Liver/metabolism*
;
Humans
;
Signal Transduction/drug effects*
;
Disease Models, Animal
;
Tumor Necrosis Factor-alpha/genetics*
9.Mechanistic study of OGT-promoted non-small cell lung cancer proliferation via the ERK signaling pathway
Xianzhou ZHANG ; Fenglin DU ; Lei WU ; Yizhe REN ; Mingna ZHAO ; Jiatao LOU
Journal of Shanghai Jiaotong University(Medical Science) 2025;45(10):1288-1297
Objective·To investigate the expression level of O-GlcNAc transferase(OGT)in non-small cell lung cancer(NSCLC)and its impact on lung cancer proliferation,as well as to explore the underlying mechanisms.Methods·The expression of OGT in NSCLC tumors and adjacent normal tissues was detected by immunohistochemistry(IHC).The dataset(GSE31210)from the GEO database was analyzed to assess the correlation between OGT expression and NSCLC patient prognosis.siRNA transfection was performed to knock down OGT expression in H460 and H1299 cells,followed by total RNA extraction and transcriptome sequencing.Pathway enrichment analysis was conducted on differentially downregulated genes in the knockdown group compared with the control group,and Western blotting was used to validate the enrichment results.The effects of OGT knockdown on cell proliferation and colony formation in H460 and H1299 cells were evaluated using the cell counting kit-8(CCK-8)assay and colony formation assay,respectively.The impact of overexpressing downstream genes was also examined.Stable OGT-knockdown cell lines were generated using shRNA and subcutaneously inoculated into nude mice to monitor tumor growth.Results·IHC revealed that OGT expression was significantly upregulated in NSCLC tumor tissues compared to adjacent normal tissues.Patients with high OGT expression exhibited shorter survival times and poorer prognoses than those with low expression.Transcriptome sequencing demonstrated that genes downregulated after OGT knockdown were primarily enriched in the mitogen-activated protein kinase(MAPK)signaling pathway.Western blotting showed that total extracellular regulated protein kinase 1/2(ERK1/2)levels remained unchanged in H460 and H1299 cells after OGT knockdown,while phosphorylated ERK1/2(p-ERK1/2)and its downstream proto-oncogene JUNB protein were markedly reduced.Suppression of OGT expression attenuated the proliferation rate and colony formation capacity of H460 and H1299 cells,whereas JUNB overexpression rescued the proliferation defects induced by OGT knockdown.Notably,H460 cells with stable OGT knockdown formed significantly smaller tumors in nude mice.Conclusion·OGT is highly expressed in NSCLC and correlates with poor prognosis.Knockdown of OGT inhibits NSCLC cell proliferation and clonogenicity in vitro,and tumor growth in vivo.Mechanistically,OGT appears to promote NSCLC progression by activating the ERK/JUNB signaling axis.
10.Research progress on energy metabolism regulation in stored platelets
Chengyan GAO ; Can LOU ; Hang LEI ; Xiaohong CAI
Chinese Journal of Blood Transfusion 2025;38(1):130-135
In maintaining normal function and activation processes, glycolysis, lipid metabolism, and amino acid metabolism play key roles in the energy demand of platelets. In the resting state, platelets primarily rely on glycolysis and aerobic oxidation to generate energy. Upon activation, platelets preferentially utilize glycolysis, as it can more rapidly provide the required ATP. In addition to glycolysis, platelets can also utilize glycogen and fatty acids as additional energy sources. The ATP provided by fatty acid oxidation is crucial for platelet activation. Additionally, during platelet storage, distinctive changes in energy metabolism occur. In the early stages of storage, platelets primarily rely on glycolysis and the pentose phosphate pathway (PPP) to generate energy. In the mid-storage phase, there is an increase in tricarboxylic acid cycle (TCA) metabolism. In the later stages of storage, cellular metabolism gradually declines. The regulation and flexibility of these metabolic pathways play a critical role in the survival and function of platelets in different states.

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